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首页> 外文期刊>Annales Geophysicae >Comparison of equatorial GPS-TEC observations over an African station and an American station during the minimum and ascending phases of solar cycle 24
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Comparison of equatorial GPS-TEC observations over an African station and an American station during the minimum and ascending phases of solar cycle 24

机译:在太阳周期的最小和上升阶段对非洲站和美国站进行的赤道GPS-TEC观测值的比较24

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摘要

GPS-TEC data were observed at the same local time at two equatorial stations on both longitudes: Lagos (6.52° N, 3.4° E, 3.04° S magnetic latitude), Nigeria; and Pu-callpa (8.38° S, 74.57° W, 4.25° N magnetic latitude), Peru during the minimum (2009, 2010) and ascending (2011) phases of solar cycle 24. These data were grouped into daily, seasonal and solar activity sets. The day-to-day variations in vertical TEC (VTEC) recorded the maximum during 14:00-16:00 LT and minimum during 04:00-06:00 LT at both longitudes. Seasonally, during solar minimum, maximum VTEC values were observed during March equinox and minimum during solstices. However, during the ascending phase of the solar activity, the maximum values were recorded during the December solstice and minimum during the June solstice. VTEC also increased with solar activity at both longitudes. On longitude by longitude comparison, the African GPS station generally recorded higher VTEC values than the American GPS station. Furthermore, harmonic analysis technique was used to extract the annual and semi-annual components of the amplitudes of the TEC series at both stations. The semi-annual variations dominated the TEC series over the African equatorial station, while the annual variations dominated those over the American equatorial station. The GPS-TEC-derived averages for non-storm days were compared with the corresponding values derived by the IRI-2007 with the NeQuick topside option. The NeQuick option of IRI-2007 showed better performance at the American sector than the African sector, but generally underestimating TEC during the early morning hours at both longitudes.
机译:在两个纬度的两个赤道站上,在相同的当地时间观测到GPS-TEC数据:拉各斯(北纬6.52°,东经3.4°,南纬3.04°),尼日利亚;和Pu-callpa(南纬8.38°,南纬74.57°,北纬4.25°)在太阳周期24的最低(2009、2010)和上升(2011)阶段。这些数据分为每日,季节性和太阳活动集。在两个经度上,垂直TEC(VTEC)的日常变化在LT 14:00-16:00记录为最大值,在04:00-06:00 LT记录为最小值。季节性地,在日照最小期间,在三月春分期间观测到最大VTEC值,而在冬至期间观测到最小值。但是,在太阳活动的上升阶段,最大值记录在12月冬至期间,最小值记录在6月冬至期间。在两个经度,VTEC也随着太阳活动的增加而增加。通过经度比较,非洲GPS站通常记录的VTEC值高于美国GPS站。此外,谐波分析技术被用于提取两个站TEC系列振幅的年和半年度分量。半年变化主导了非洲赤道站的TEC系列,而年度变化主导了美国赤道站的TEC系列。将非风暴日的GPS-TEC得出的平均值与IRI-2007带有NeQuick topside选项的相应值进行了比较。 IRI-2007的NeQuick选项在美国部门的表现优于非洲部门,但通常在两个经度的清晨时段都低估了TEC。

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  • 来源
    《Annales Geophysicae 》 |2013年第11期| 2085-2096| 共12页
  • 作者单位

    Department of Physics, University of Lagos, Akoka, Yaba, Lagos, Nigeria;

    Research Institute for Sustainable Humanosphere, Kyoto University, Kyoto, Japan;

    Institute for Scientific Research, Boston College, Chestnut Hill, MA, USA;

    Institute for Scientific Research, Boston College, Chestnut Hill, MA, USA;

    Institute for Scientific Research, Boston College, Chestnut Hill, MA, USA;

    Jicamarca Radio Observatory, Lima, Peru;

    Department of Physical Science, Yaba College of Technology, Yaba, Lagos, Nigeria;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ionosphere; (Equatorial ionosphere);

    机译:电离层;(赤道电离层);

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